A soft golden beige that lives up to its name with a cozy, welcoming feel. It glows in evening light and stays light enough for whole rooms. Common in living rooms, bedrooms and traditional exteriors.
Paint color names and codes are trademarks of their respective owners (Sherwin-Williams, Benjamin Moore and Behr); this site is not affiliated with them. The hex value is a digital approximation: the real paint looks different depending on light, sheen and your screen, so always test a physical sample on your wall before you buy.
Undertone: Warm golden beige.
Where to use it: Living room, bedroom, exterior siding.
Trim: Comfy Beige pairs well with Off White 73 for trim, doors and ceilings.
Behr colors that work with Comfy Beige on walls, trim and accents.
The closest matches to Comfy Beige from Sherwin-Williams and Benjamin Moore, by digital color value. ΔE measures the visible difference: under 2 is barely noticeable.
From lightest to darkest. Tap a shade to copy its code.
Copy the codes or open a palette in the editor to tweak it.
The digital hex value for Behr Comfy Beige (N290-3) is #E3D2B6, which is rgb(227, 210, 182). Use it for mockups and digital design; a physical sample is the only reliable way to judge the paint itself.
We have not confirmed a published LRV for Behr Comfy Beige, so we do not list one. You can find it on the back of the paint chip or on Behr’s website.
Comfy Beige has a warm golden beige undertone. By its digital value it sits on the warm side, but north-facing light will cool it down and warm bulbs will warm it up, so test a sample in the room where you plan to use it.
The closest Sherwin-Williams color to Behr Comfy Beige is Wool Skein (SW 6148, #D9CFBA), which is very close by digital value (ΔE 4.8). Paint formulas differ, so color-matched versions are never exact: compare physical samples side by side.
The closest Benjamin Moore color to Behr Comfy Beige is Manchester Tan (HC-81, #DBD2BC), which is very close by digital value (ΔE 4.5). Paint formulas differ, so color-matched versions are never exact: compare physical samples side by side.